EP3504771A1 - Ups maintenance bypass systems using mode signaling - Google Patents
Ups maintenance bypass systems using mode signalingInfo
- Publication number
- EP3504771A1 EP3504771A1 EP17762254.5A EP17762254A EP3504771A1 EP 3504771 A1 EP3504771 A1 EP 3504771A1 EP 17762254 A EP17762254 A EP 17762254A EP 3504771 A1 EP3504771 A1 EP 3504771A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- switch
- ups
- power
- mbp
- load
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Granted
Links
Classifications
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02J—ELECTRIC POWER NETWORKS; CIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
- H02J9/00—Circuit arrangements for emergency or stand-by power supply, e.g. for emergency lighting
- H02J9/04—Circuit arrangements for emergency or stand-by power supply, e.g. for emergency lighting in which the distribution system is disconnected from the normal source and connected to a standby source
- H02J9/06—Circuit arrangements for emergency or stand-by power supply, e.g. for emergency lighting in which the distribution system is disconnected from the normal source and connected to a standby source with automatic change-over, e.g. UPS systems
- H02J9/062—Circuit arrangements for emergency or stand-by power supply, e.g. for emergency lighting in which the distribution system is disconnected from the normal source and connected to a standby source with automatic change-over, e.g. UPS systems for AC powered loads
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01H—ELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
- H01H13/00—Switches having rectilinearly-movable operating part or parts adapted for pushing or pulling in one direction only, e.g. push-button switch
- H01H13/02—Details
- H01H13/12—Movable parts; Contacts mounted thereon
- H01H13/14—Operating parts, e.g. push-button
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01H—ELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
- H01H19/00—Switches operated by an operating part which is rotatable about a longitudinal axis thereof and which is acted upon directly by a solid body external to the switch, e.g. by a hand
- H01H19/02—Details
- H01H19/10—Movable parts; Contacts mounted thereon
- H01H19/14—Operating parts, e.g. turn knob
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01H—ELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
- H01H9/00—Details of switching devices, not covered by groups H01H1/00 - H01H7/00
- H01H9/20—Interlocking, locking, or latching mechanisms
- H01H9/28—Interlocking, locking, or latching mechanisms for locking switch parts by a key or equivalent removable member
- H01H9/281—Interlocking, locking, or latching mechanisms for locking switch parts by a key or equivalent removable member making use of a padlock
- H01H9/282—Interlocking, locking, or latching mechanisms for locking switch parts by a key or equivalent removable member making use of a padlock and a separate part mounted or mountable on the switch assembly and movable between an unlocking position and a locking position where it can be secured by the padlock
Definitions
- the inventive subject matter relates to power distribution systems and methods and, more particularly, to uninterruptible power supply (UPS) systems and methods.
- UPS uninterruptible power supply
- UPS systems are commonly used in installations such as data centers, medical centers and industrial facilities. UPS systems may be used in such installations to provide backup power to maintain operation in event of failure of the primary utility supply.
- FIG. 1 illustrates an example of a UPS system having a conventional MBP arrangement.
- a UPS 30 includes a power train having converter circuitry 32, which may include, for example, a rectifier and inverter coupled by an intermediate DC bus, as is common in "on-line" UPS configurations.
- a static bypass switch (e.g., a semiconductor- based switch) 33 is configured to bypass the converter circuitry 32. This static bypass switch 33 may be closed, for example, when the UPS 30 is operating in an increased-efficiency mode when operation of the converter circuitry 32 is unnecessary to provide desired power quality and may unnecessarily increase losses. The static bypass switch 33 may also be closed when, for example, the converter circuitry 32 malfunctions.
- An MBP assembly 40 is configured to selectively couple a power source 10 and a load 20 to one another and to the UPS 30.
- the MBP assembly 40 may include a rotary switch 41 having "UPS", "Line” and “Service” switch positions. In the "UPS" position, the switch 41 may couple the power source 10 to the power input of the UPS 30 and may couple the load 20 to the power output of the UPS 30.
- the UPS 30 may be used to provide uninterruptible power to the load 20 such that, if the power source 10 fails, power may be provided to the load 20 by an alternative source (e.g., battery or capacitor) coupled to the converter circuitry 32.
- an alternative source e.g., battery or capacitor
- the switch 41 may decouple the output of the UPS 30 from the power source 10 and directly couple the power source to the load 20.
- the power input of the UPS 30 may remain connected to the power source 10 to maintain the converter circuitry 32 in an energized state, which may facilitate testing of the UPS 30 without disruption of the load 20.
- the switch 41 may decouple the UPS 30 from the power source 10 such that the UPS 30 is de-energized, which may enable maintenance personnel to safely remove and/or service the UPS 30 while the power source 10 remains coupled to the load 20 via the MBP assembly 40.
- the MBP assembly 40 may further include a pushbutton switch 42 that is mechanically interlocked with the rotary switch 41, such that the pushbutton switch 42 is pressed to enable rotation of the rotary switch 41.
- Actuation of the pushbutton switch 42 causes a state change in contacts thereof which are coupled to a controller 34 of the UPS 30.
- the controller 34 may close the static bypass switch 33 to place the UPS 30 in a "bypassed" mode in which the static bypass switch 33 is closed.
- MBP maintenance bypass
- UPS uninterruptible power supply
- the system includes a power input configured to be coupled to a power source, a power output configured to be coupled to a load, a MBP output configured to provide power to the UPS, and a MBP input configured to receive power from the UPS.
- the system also includes a first switch having first, second and third positions. The first position couples the power input to the MBP output and couples the power output to the MBP input. The second position couples the power input to the power output and the MBP output and decouples the MBP input from the power output.
- the first switch may include a rotary switch and the second switch may include a pushbutton switch.
- the system may further include a lockout/tag out (LOTO) mechanism including a loop configured to receive a lock and configured to inhibit movement of the first switch from the third position to the second position when the lock is engaged in the loop.
- the LOTO mechanism may include a push button that translates the loop to an exposed position responsive to being depressed by a user and wherein the exposed position enables engagement of the lock in the loop.
- the MBP assembly includes a first switch having first, second and third positions. The first position couples a power source to an input of the MBP output and couples a power output of the UPS to a load. The second position couples the power source to the power input of the UPS and decouples the power output of the UPS from the load. The third position couples the power source to the load, decouples
- the first switch also includes a first contact set configured to provide a first control signal to the UPS responsive to a transition of the first switch between the first and second positions.
- the MBP assembly further includes a second switch configured to enable transition of the first switch between the first position and the second position and including a second contact set configured to provide a second control signal to the UPS responsive to actuation of the second switch.
- the UPS may include converter circuitry, a bypass switch configured to bypass the converter circuitry in a closed state, and a controller configured to control the converter circuitry and the bypass switch responsive to the first and second control signals.
- Still further embodiments provide a system including a first switch having at least three positions that provide different couplings of a power source, a load, a power input of a UPS and a power output of a UPS and including a first contact set configured to indicate at least one transition between positions of the at least three positions.
- the system further includes a second switch configured to enable transition of the first switch between at least two of the positions and including a second contact set configured to indicate actuation of the second switch.
- the first switch may include a rotary switch and the second switch may include a pushbutton switch.
- FIG. 1 is a schematic diagram illustrating a conventional maintenance bypass (MBP) arrangement.
- MBP maintenance bypass
- FIG. 2 is a schematic diagram illustrating a MBP arrangement according to some embodiments of the inventive subject matter.
- FIGs. 3-5 are front, top and back views of a MBP assembly according to further embodiments of the inventive subject matter.
- FIG. 6 is a schematic diagram illustrating interconnections of rotary and pushbutton switches of the MBP assembly of FIGs. 3-5.
- FIGs. 7-11 are front views of the MBP assembly of FIGs. 3-5 illustrating operations thereof.
- FIG. 2 illustrates a system according to some embodiments of the inventive subject matter.
- the system includes a UPS 210 includes a power train 212 having converter circuitry 213.
- the converter circuitry 213 may take any of a number of forms.
- the converter circuitry 213 may have an "on-line" UPS configuration that includes a rectifier/inverter chain.
- Other embodiments may use other UPS topologies, such as stand-by UPS topologies.
- a static bypass switch (e.g., a semiconductor switch) 211 is configured to bypass the converter circuitry 213.
- a controller 214 controls operation of the power train 212.
- a maintenance bypass (MBP) assembly 220 includes rotary switch 222 that is configured to selectively couple a power source 10 and a load 20 to one another and to the UPS 220.
- the rotary switch 222 may couple the power source 10 to the power input of the UPS 210 and may couple the load 20 to the power output of the UPS 210.
- the rotary switch 222 may decouple the output of the UPS 210 from the power source 10 and directly couple the power source to the load 20.
- the rotary switch 22 also connected the power source 10 to the power input of the UPS 210, so that the UPS 210 may remain energized in this position for testing and other purposes.
- the switch 222 decouples the power input of the UPS 210 from the power source 10 such that the UPS 30 is de-energized to allow service personnel to remove or otherwise service the UPS 30.
- the MBP assembly 220 further includes a pushbutton switch 224 that is mechanically interlocked with the rotary switch 222. Movement of the rotary switch 222 from the "UPS" switch position to the “Line” position and movement from the "Line” position to the “UPS” position each require the user to press the pushbutton switch 224 to enable rotation of the rotary switch 222. Actuation of the pushbutton switch 224 causes a state change in contacts of the pushbutton switch 224 that are coupled to the controller 214 of the UPS 210. In response to transition of the pushbutton switch 224 contacts, the controller 214 may perform any of a variety of operations. For example, in some embodiments, the controller 214 may close the static bypass switch 211 to place the UPS 210 in a "bypassed" operational state before transition of the rotary switch 222 to the "Line" position.
- the rotary switch 224 further includes a set of auxiliary contacts 223, which are coupled to the controller 214 of the UPS 210 and change state when the rotary switch 222 is moved between the "Line" position and the "UPS" position. These auxiliary contacts 223 may be used to indicate to the controller 214 that the rotary switch 222 has returned to the "UPS" position. In response to the transition of the rotary switch 222 to the "UPS" position, the controller 214 may place the power train 212 into a "normal" mode in which
- uninterruptible power provides power to the load from the primary power source 10 and falls back to an auxiliary source (e.g., a battery) in response to a failure of the primary power source 10.
- auxiliary source e.g., a battery
- FIG. 2 illustrates a MBP assembly 300 according to further embodiments.
- the MBP assembly 300 includes a housing 310 that is configured to be installed in an equipment rack along with a UPS to which the MBP assembly 300 is connected.
- a rotary switch 320 and a pushbutton switch 320 that operate along the lines described above are positioned on a front face of the housing 310.
- terminal blocks 340 provide connections for the rotary switch 320 and the pushbutton switch 330, and access to the terminal blocks 340 may be provided via cutouts 350 on a rear face of the housing 310.
- the rotary switch 320 further includes an actuator 322 that is used to implement a "lock out/tag out" (LOTO) feature, described below with reference to FIG. 11.
- LOTO lock out/tag out
- FIG. 6 is a schematic diagram illustrating connections of the rotary switch 320 and the pushbutton switch of the MBP assembly 300 of FIGs. 3-5.
- Load and line connections of the rotary switch 320 are provided via first and second groups of terminals 340a, 340b, MBP input and output connections are provided via respective third and fourth groups of terminals 340c, 340d.
- Connections for auxiliary contacts of the rotary switch 320 i.e., contacts that may be used to sense transition of the rotary switch 320 from the "Line" position to the "UPS" position, are provided via a fifth group of terminals 340e.
- Connections to contacts of the pushbutton switch 330 are provided via a sixth group of terminals 340f.
- the auxiliary contacts of the rotary switch 320 and/or the contacts of the pushbutton switch 330 may include complementary "normally” open and "normally closed” sets of contacts.
- FIGs. 7-11 illustrate operations of the MBP assembly 300 according to some embodiments.
- the rotary switch 320 is initially in the "UPS" position, wherein the rotary switch 320 couples a power source connected to a power input (i.e., the terminal group 340b of FIG. 6) of the MBP assembly 300 to a power input of a UPS. which is coupled to a MBP output (i.e., the terminal group 340d of FIG. 6) of the MBP assembly 300.
- the rotary switch 320 In the "UPS" position, the rotary switch 320 also couples a power output of the UPS, which is connected to a MBP input (i.e., the terminal group 340c) of the MBP assembly 300, to a load connected to the power output (i.e., the terminal group 340a of FIG. 6) of the MBP assembly 300.
- a MBP input i.e., the terminal group 340c
- the power output i.e., the terminal group 340a of FIG. 6
- the MBP assembly 300 transitions to a "Line” mode by pressing and holding the pushbutton switch 330 while turning the rotary switch 320 to the "Line” position.
- pressing the pushbutton switch 330 may generate a signal (i.e., via terminal group 340e shown in FIG. 6) to the connected UPS to place itself into a "bypassed" mode.
- the rotary switch 320 In the ''Line” position, the rotary switch 320 directly couples the external power source to the load, leaves the MBP input coupled to the external power source and decouples the power output of the connected UPS from the load. This position allows the connected UPS to remain energized for testing and other purposes while disconnected from the load.
- the MBP assembly 300 may be transitioned to the "Service” mode by turning the rotary switch 320 to the “Service” position.
- the rotary switch 320 decouples the power input of the UPS from the external power source and decouples the power ouiput of the UPS from the external load, while leaving the power source directly coupled to the load. As explained above, this does not require pressing of the pushbutton switch 330.
- This transition may be used by service personnel to test transition of the connected UPS from "normal” to "on battery” mode.
- a technician can place the connected UPS (e.g., through its own user interface) into the "normal” mode of operation, with power being provided at the output of the UPS from the external source coupled to the power input of the UPS via the MBP assembly 300.
- Transition of the UPS to "on battery” mode may be achieved simply turning the rotary switch to the "Service” position, which decouples the power input of the UPS from the external power source and automatically triggers a mode transition of the UPS.
- the MBP assembly 300 may be transitioned back to the "Line” mode by turning the rotary switch 320 counterclockwise. As explained above, this transition also does not require pressing of the pushbutton switch 330. This transition may also be used by maintenance personnel to test transition back to "normal” mode from “on batters'” mode. In particular, with the rotary switch 320 in the "Service” position and the UPS in an "on batter)'” mode, a technician can test transition of the UPS back to the "normal” mode by simply turning the rotary switch 320 to the "Line” position.
- the MBP assembly 300 may be transitioned to "UPS" mode by pressing and holding the pushbutton switch 330 and turning the rotary switch 320 to the "UPS" position. As explained above, this transition may cause a state transition of the auxiliary contacts (i.e., the contacts coupled to the terminal group 340e of FIG. 6) of the rotary switch 320.
- the connected UPS receives this signal and, if needed, can transition back to a "normal" operating mode so that it will be able to protect the load in the event the external power source fails.
- the MBP unit may also be configured to provide a LOTO feature.
- the LOTO actuator 322 may be pressed, which results in movement of a LOTO loop 324 to an exposed position. In this position, rotation of the rotary switch 320 is inhibited.
- the LOTO mechanism may be retained in this locking position by inserting a LOTO tag 1 100 into the exposed loop 324. This feature can prevent energizing of the connected UPS due to inadvertent mo vement of the rotary switch 320, and thus protect maintenance personnel working on the UPS,
Landscapes
- Business, Economics & Management (AREA)
- Emergency Management (AREA)
- Engineering & Computer Science (AREA)
- Power Engineering (AREA)
- Stand-By Power Supply Arrangements (AREA)
Abstract
Description
Claims
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US201662378983P | 2016-08-24 | 2016-08-24 | |
| PCT/US2017/046870 WO2018038965A1 (en) | 2016-08-24 | 2017-08-15 | Ups maintenance bypass systems using mode signaling |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| EP3504771A1 true EP3504771A1 (en) | 2019-07-03 |
| EP3504771B1 EP3504771B1 (en) | 2022-03-02 |
Family
ID=59799449
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP17762254.5A Active EP3504771B1 (en) | 2016-08-24 | 2017-08-15 | Ups maintenance bypass systems using mode signaling |
Country Status (4)
| Country | Link |
|---|---|
| US (2) | US10903683B2 (en) |
| EP (1) | EP3504771B1 (en) |
| CN (1) | CN109643908B (en) |
| WO (1) | WO2018038965A1 (en) |
Families Citing this family (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2018038965A1 (en) * | 2016-08-24 | 2018-03-01 | Eaton Corporation | Ups maintenance bypass systems using mode signaling |
| CN113629662B (en) * | 2021-08-31 | 2024-02-09 | 中车长春轨道客车股份有限公司 | High-voltage interlocking system of train |
Family Cites Families (9)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US5081367A (en) * | 1990-07-06 | 1992-01-14 | Westinghouse Electric Corp. | Electric power system with maintenance bypass for uninterruptible power supply using closed transition operation |
| JP5176407B2 (en) * | 2007-06-21 | 2013-04-03 | 富士電機株式会社 | Maintenance bypass device |
| CN101350535B (en) * | 2007-07-17 | 2010-05-19 | 中芯国际集成电路制造(上海)有限公司 | Uninterrupt power supply |
| JP4993121B2 (en) * | 2008-01-17 | 2012-08-08 | 富士電機株式会社 | Uninterruptible power system |
| CN101604857A (en) * | 2009-06-23 | 2009-12-16 | 中兴通讯股份有限公司 | UPS |
| US8546689B2 (en) * | 2011-02-24 | 2013-10-01 | Schneider Electric It Corporation | Service access point for a uninterruptible power supply |
| CN102801196B (en) * | 2012-08-15 | 2014-06-11 | 佛山市柏克新能科技股份有限公司 | UPS (Uninterrupted Power Supply) with maintenance protection function |
| CN204167993U (en) | 2014-10-30 | 2015-02-18 | 广东易事特电源股份有限公司 | The external maintenance bypass device of UPS |
| WO2018038965A1 (en) * | 2016-08-24 | 2018-03-01 | Eaton Corporation | Ups maintenance bypass systems using mode signaling |
-
2017
- 2017-08-15 WO PCT/US2017/046870 patent/WO2018038965A1/en not_active Ceased
- 2017-08-15 EP EP17762254.5A patent/EP3504771B1/en active Active
- 2017-08-15 CN CN201780052140.5A patent/CN109643908B/en active Active
- 2017-08-15 US US16/327,217 patent/US10903683B2/en active Active
-
2021
- 2021-01-25 US US17/157,309 patent/US11451087B2/en active Active
Also Published As
| Publication number | Publication date |
|---|---|
| US20210218270A1 (en) | 2021-07-15 |
| CN109643908B (en) | 2023-06-20 |
| EP3504771B1 (en) | 2022-03-02 |
| CN109643908A (en) | 2019-04-16 |
| WO2018038965A1 (en) | 2018-03-01 |
| US11451087B2 (en) | 2022-09-20 |
| US10903683B2 (en) | 2021-01-26 |
| US20190207417A1 (en) | 2019-07-04 |
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